89 / 2023-07-29 10:47:29
A Scale-aware Parameterization of Restratification Effect of Turbulent Thermal Wind Ba
parameterization,turbulent thermal wind balance,Surface boundary layer
Abstract Accepted
Jing Zhao / Ocean University of China
Yang Peiran / Qingdao;Laoshan Laboratory
The vertical buoyancy flux under the turbulent thermal wind (TTW) balance BfTTW plays an important role in restratifying the surface mixed layer in winter. So far most of the global ocean models are too coarse to resolve this process. In this paper, a scale-aware parameterization is proposed for the BfTTW under the TTW balance and implemented in a hierarchy of regional ocean simulations over the winter Kuroshio extension with horizontal resolutions ranging from 27 km to 1 km. The parameterization depends on the Coriolis parameter, model-resolved vertical turbulent viscosity, horizontal density gradient and a scaling relationship to adjust for effects of model horizontal resolution on the simulated horizontal density gradient. It shows good skills in reconciling the difference between BfTTW in the coarse-resolution simulations (27 km, 9km and 3 km) and in the 1-km simulation where BfTTW is well resolved. Furthermore, implementation of the parameterization improves the simulated stratification in the mixed layer in the coarse-resolution simulations.

 
Important Date
  • Conference Date

    Nov 02

    2023

    to

    Nov 06

    2023

  • Nov 01 2023

    Contribution Submission Deadline

  • Nov 20 2023

    Draft paper submission deadline

  • Nov 05 2024

    Registration deadline

Sponsored By
Coastal Zones Under Intensifying Human Activities and Changing Climate: A
Regional Programme Integrating Science, Management and Society to Support
Ocean Sustainability (COASTAL-SOS)
Organized By
State Key Laboratory of Marine Environmental Science, Xiamen University
College of Ocean and Earth Sciences, Xiamen University
China-ASEAN College of Marine Sciences, Xiamen University Malaysia
Supported By
COASTAL-SOS
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